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Carbon Mineralization in Reactive Silicate Zones
Anne H. Menefee
, Brian R. Ellis
John and Willie Leone Department of Energy & Mineral Engineering (EME)
Research output
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Contribution to journal
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Article
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peer-review
18
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Keyphrases
Silicate
100%
Carbon Mineralization
100%
Carbonate Precipitation
100%
Basalt
66%
Mg-silicates
66%
Carbonation
66%
Global CO2 Emissions
33%
Model Prediction
33%
Reservoir Fluid
33%
Fluid Transport
33%
Reaction Products
33%
Local Maxima
33%
Wollastonite
33%
Reactive Surface Area
33%
Reactive Transport
33%
Near-complete
33%
Volume Expansion
33%
CO2 Injection
33%
Pore Space
33%
Flood Basalt
33%
Direct Competition
33%
Carbon Sink
33%
Silicate Minerals
33%
Precipitation Pattern
33%
Diffusion Limit
33%
Olivine
33%
Carbonate Minerals
33%
Reactive Minerals
33%
CO2 Trapping
33%
Static System
33%
Core Flooding Experiment
33%
Serpentinization
33%
Silicate Powders
33%
Carbonate Alteration
33%
Mg-carbonates
33%
Ca-carbonate
33%
Model Priors
33%
Carbonation Reaction
33%
Negative Emissions Technologies
33%
Earth and Planetary Sciences
Carbon Mineralization
100%
Carbon Dioxide
100%
Basalt
66%
Emissions
33%
Carbon Dioxide Emission
33%
Surface Area
33%
Fracturing
33%
Pore Space
33%
Reactive Transport
33%
Flood Basalt
33%
Wollastonite
33%
Silicate Mineral
33%
Emission Reduction
33%
Carbonate Mineral
33%
Serpentinization
33%